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A π-gel scaffold for assembling fullerene to photoconducting supramolecular rods

Nair, Vishnu Sukumaran; Mukhopadhyay, Rahul Dev; Saeki, Akinori; Seki, Shu; Ajayaghosh, Ayyappanpillai

By March 12th, 2019No Comments

Science Advances, 2016, vol 2, 9, pp. e1600142

DOI:10.1126/sciadv.1600142

Abstract

Nonequilibrium self-assembly of molecules holds a huge prospect as a tool for obtaining new-generation materials for future applications. Crystallization of neutral molecules within a supramolecular gel matrix is one example in which two nonequilibrium processes occur orthogonal to each other. On the other hand, electronically interacting donor-acceptor two-component systems are expected to form phase-miscible hybrid systems. Contrary to the expectation, we report the behavior of a π-gel, derived from oligo(p-phenylenevinylene), OPVA, as a scaffold for the phase separation and crystallization of fullerene (C60) to supramolecular rods with increased transient photoconductivity (φƩμmax = 2.4 × 10−4 cm2 V−1 s−1). The C60 supramolecular rods in the π-gel medium exhibited high photocurrent in comparison to C60 loaded in a non–π-gel medium. This finding provides an opportunity for large-scale preparation of micrometer-sized photoconducting rods of fullerenes for device application. Highly photoconductive crystalline supramolecular rods are obtained by the self-assembly of C60 in a soft-gel scaffold. Highly photoconductive crystalline supramolecular rods are obtained by the self-assembly of C60 in a soft-gel scaffold.

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